Freilich Shiri, Lev Shery, Gonda Itay, Reuveni Eli, Portnoy Vitaly, Oren Elad, Lohse Marc, Galpaz Navot, Bar Einat, Tzuri Galil, Wissotsky Guy, Meir Ayala, Burger Joseph, Tadmor Yaakov, Schaffer Arthur, Fei Zhangjun, Giovannoni James, Lewinsohn Efraim, Katzir Nurit
Newe Ya'ar Research Center, Agricultural Research Organization, Ramat Yishay, 30095, Israel.
Targenomix GmbH, Potsdam, Germany.
BMC Plant Biol. 2015 Mar 3;15:71. doi: 10.1186/s12870-015-0449-x.
Melon (Cucumis melo) fruits exhibit phenotypic diversity in several key quality determinants such as taste, color and aroma. Sucrose, carotenoids and volatiles are recognized as the key compounds shaping the above corresponding traits yet the full network of biochemical events underlying their synthesis have not been comprehensively described. To delineate the cellular processes shaping fruit quality phenotypes, a population of recombinant inbred lines (RIL) was used as a source of phenotypic and genotypic variations. In parallel, ripe fruits were analyzed for both the quantified level of 77 metabolic traits directly associated with fruit quality and for RNA-seq based expression profiles generated for 27,000 unigenes. First, we explored inter-metabolite association patterns; then, we described metabolites versus gene association patterns; finally, we used the correlation-based associations for predicting uncharacterized synthesis pathways.
Based on metabolite versus metabolite and metabolite versus gene association patterns, we divided metabolites into two key groups: a group including ethylene and aroma determining volatiles whose accumulation patterns are correlated with the expression of genes involved in the glycolysis and TCA cycle pathways; and a group including sucrose and color determining carotenoids whose accumulation levels are correlated with the expression of genes associated with plastid formation.
The study integrates multiple processes into a genome scale perspective of cellular activity. This lays a foundation for deciphering the role of gene markers associated with the determination of fruit quality traits.
甜瓜(黄瓜属甜瓜)果实的几个关键品质决定因素,如口感、颜色和香气,表现出表型多样性。蔗糖、类胡萝卜素和挥发性物质被认为是塑造上述相应性状的关键化合物,但其合成背后的完整生化事件网络尚未得到全面描述。为了描绘塑造果实品质表型的细胞过程,一组重组自交系(RIL)被用作表型和基因型变异的来源。同时,对成熟果实进行了分析,测定了与果实品质直接相关的77个代谢性状的定量水平,并对27000个单基因进行了基于RNA测序的表达谱分析。首先,我们探索了代谢物之间的关联模式;然后,我们描述了代谢物与基因的关联模式;最后,我们利用基于相关性的关联来预测未表征的合成途径。
基于代谢物与代谢物以及代谢物与基因的关联模式,我们将代谢物分为两个关键组:一组包括乙烯和决定香气的挥发性物质,其积累模式与糖酵解和三羧酸循环途径中相关基因的表达相关;另一组包括蔗糖和决定颜色的类胡萝卜素,其积累水平与质体形成相关基因的表达相关。
该研究将多个过程整合到细胞活动的基因组规模视角中。这为解读与果实品质性状决定相关的基因标记的作用奠定了基础。